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Related papers: ISRU Implications for Lunar and Martian Plume Effe…

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Tools have been developed to model and simulate the effects of lunar landing vehicles on the lunar environment, mostly addressing the effects of regolith erosion by rocket plumes and the fate of the ejected lunar soil particles. The KSC…

Earth and Planetary Astrophysics · Physics 2023-06-09 Scott T. Shipley , John E. Lane , Philip T. Metzger

Several physical mechanisms are involved in excavating granular materials beneath a vertical jet of gas. These occur, for example, beneath the exhaust plume of a rocket landing on the soil of the Moon or Mars. A series of experiments and…

Landing robotic spacecrafts and humans on Mars has become one of the inevitable technological necessities for humans. Effectuating perfect Mars expedition requires landing of enormous cargoes, crewed modules, ascent vehicles, and scientific…

Popular Physics · Physics 2020-08-31 Malaya Kumar Biswal M , Ramesh Naidu Annavarapu

With NASA's planned return to the moon and possibly with lunar outposts being formed, repeated landings at the same site will be necessary. Understanding rocket plume interaction with lunar and Martian surfaces is of paramount importance in…

Earth and Planetary Astrophysics · Physics 2023-06-05 Christopher Immer , Philip Metzger

In the distant future, humans will surely fly to Mars. Even today, probes and vehicles are carrying out measurements on the surface of Mars. However, most landings on Mars cannot be carried out with parachutes alone. Instead, landing…

Physics Education · Physics 2019-12-12 Markus Nielbock

When launching or landing a spacecraft on the regolith of a terrestrial surface, special attention needs to be paid to the rocket exhaust cratering effects. If the effects are not controlled, the rocket cratering could damage the spacecraft…

Earth and Planetary Astrophysics · Physics 2021-04-13 Carly M. Donohue , Philip T. Metzger , Christopher D. Immer

This manuscript analyzes lunar lander soil erosion models and trajectory models to calculate how much damage will occur to spacecraft orbiting in the vicinity of the Moon. The soil erosion models have considerable uncertainty due to gaps in…

Earth and Planetary Astrophysics · Physics 2023-05-23 Philip T. Metzger , James G. Mantovani

Roberts' model of lunar soil erosion beneath a landing rocket has been updated in several ways to predict the effects of future lunar landings. The model predicts, among other things, the number of divots that would result on surrounding…

Earth and Planetary Astrophysics · Physics 2021-04-13 Philip T. Metzger , John E. Lane , Christopher D. Immer

The Constellation Project's planned return to the moon requires numerous landings at the same site. Since the top few centimeters are loosely packed regolith, plume impingement from the Lander ejects the granular material at high…

Earth and Planetary Astrophysics · Physics 2021-04-19 Christopher Immer , John Lane , Philip Metzger , Sandra Clements

Recent successful lunar landing missions have generated significant interest among space agencies in establishing a permanent human settlement on the Moon. Building a lunar base requires multiple and frequent landing missions to support…

Systems and Control · Electrical Eng. & Systems 2025-12-02 Aditya Rallapalli , Suraj Kumar , Rijesh MP , C K Koteswar Rao , Bharat Kumar GVP

This study estimates the cost of building lunar landing pads and examines whether any construction methods are economically superior to others. Some proposed methods require large amounts of mass transported from the Earth, others require…

General Economics · Economics 2022-05-03 Philip T. Metzger , Greg W. Autry

Experiments were performed to study how rocket exhaust blows soil in lunar and Martian conditions. Jets of gas were blown downwardly at various granular materials while a camera recorded the formation of scour holes as the material was…

Instrumentation and Methods for Astrophysics · Physics 2024-06-25 Philip T. Metzger

Much of the surface of Mars is covered by dunes, ripples, and other features formed by the blowing of sand by wind, known as saltation. In addition, saltation loads the atmosphere with dust aerosols, which dominate the Martian climate. We…

Earth and Planetary Astrophysics · Physics 2010-02-19 Jasper F. Kok

This 2020 Decadal Survey White Paper reviews what is known about lunar and martian lander Plume Surface Interactions (PSI) during powered descent. This includes an overview of the phenomenology and a description of the induced hardware and…

The space challenges do exist at every stride on a human expedition to Mars that arise due to galactic natural phenomena and artificial technologies. This paper emphasizes on Mars orbital and planetary challenges encountered from orbit to…

Earth and Planetary Astrophysics · Physics 2021-07-09 Malaya Kumar Biswal M , Noor Basanta Das , Ramesh Naidu Annavarapu

Multiple nations are planning activity on the Moon's surface, and to deconflict lunar operations we must understand the sandblasting damage from rocket exhaust blowing soil. Prior research disagreed over the scaling of the erosion rate,…

Earth and Planetary Astrophysics · Physics 2024-03-28 Philip Metzger

Aims. Particles ejected from the lunar surface via hypervelocity impacts form a torus between the Earth and the Moon. According to our previous study (Yang et al., A\&A, 659, A120), among them about $2.3\times10^{-4}\,\mathrm{kg/s}$…

Earth and Planetary Astrophysics · Physics 2025-07-22 Kun Yang , Yu Jiang , Youpeng Liang , Xiaodong Liu

Impactors of different types and sizes can produce a final crater of the same diameter on a planet under certain conditions. We derive the condition for such "isocrater impacts" from scaling laws, as well as relations that describe how the…

Earth and Planetary Astrophysics · Physics 2018-02-26 Thomas Ruedas , Doris Breuer

Previously we presented a numerical model that predicts trajectories of lunar dust, soil, and gravel blown by the engine exhaust of a lunar lander. The model uses the gas density, velocity vector field, and temperature predicted by…

Fluid Dynamics · Physics 2021-04-14 John E. Lane , Philip T. Metzger , Jeffrey W. Carlson

The surface gravity on Mars is smaller than the surface gravity on Earth, resulting in longer falling times. This effect can be simulated on Earth by taking advantage of air resistance and buoyancy, which cause low density objects to fall…

Physics Education · Physics 2016-02-24 Patrik Pirkola , Patrick B. Hall
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